Nanostructured MoO3 for Efficient Energy and Environmental Catalysis

MOLECULES(2020)

Cited 73|Views14
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Abstract
This paper mainly focuses on the application of nanostructured MoO3 materials in both energy and environmental catalysis fields. MoO3 has wide tunability in bandgap, a unique semiconducting structure, and multiple valence states. Due to the natural advantage, it can be used as a high-activity metal oxide catalyst, can serve as an excellent support material, and provide opportunities to replace noble metal catalysts, thus having broad application prospects in catalysis. Herein, we comprehensively summarize the crystal structure and properties of nanostructured MoO3 and highlight the recent significant research advancements in energy and environmental catalysis. Several current challenges and perspective research directions based on nanostructured MoO3 are also discussed.
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Key words
nanostructured MoO3,energy conversion,environmental catalysis,photocatalytic degradation,selective thermocatalysis,water splitting,fuel cells,crystalline structure,morphology
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